RO2166A-1 [RFM]

857.65 MHz SAW Resonator; 857.65 MHz的SAW谐振器
RO2166A-1
型号: RO2166A-1
厂家: RF MONOLITHICS, INC    RF MONOLITHICS, INC
描述:

857.65 MHz SAW Resonator
857.65 MHz的SAW谐振器

晶体 谐振器
文件: 总2页 (文件大小:97K)
中文:  中文翻译
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Preliminary  
RO2166A  
RO2166A-1  
RO2166A-2  
®
Ideal for European 857.65 MHz Transmitters  
Very Low Series Resistance  
Quartz Stability  
Surface-Mount Ceramic Case with 21 mm2 Footprint  
Complies with Directive 2002/95/EC (RoHS)  
857.65 MHz  
SAW  
Resonator  
The RO2166A is a true one-port, surface-acoustic-wave (SAW) resonator in a surface-mount ceramic case.  
It provides reliable, fundamental-mode, quartz frequency stabilization of local oscillators operating at 857.65  
MHz. This SAW is designed for 868.35 MHz superhet receivers with 10.7 MHz IF. Applications include  
remote-control and wireless security receivers operating under ETSI-ETS 300 220 in Europe and under FTZ  
17 TR 2100 in Germany.  
Absolute Maximum Ratings  
Rating  
Value  
Units  
CW RF Power Dissipation  
DC Voltage Between Terminals  
Case Temperature  
+0  
dBm  
±30  
-40 to +85  
260  
VDC  
°C  
SM-2 Case  
Soldering Temperature (10 seconds / 5 cycles max.)  
°C  
Electrical Characteristics  
Characteristic  
Sym  
Notes  
Minimum  
Typical  
Maximum  
857.725  
857.800  
857.750  
±75  
Units  
Frequency (+25 °C)  
Nominal Frequency  
RO2166A  
857.575  
857.500  
857.550  
2, 3, 4,  
5
f
RO2166A-1  
RO2166A-2  
RO2166A  
MHz  
C
Tolerance from 857.65 MHz  
Df  
RO2166A-1  
RO2166A-2  
±150  
±100  
2.0  
kHz  
dB  
C
Insertion Loss  
Quality Factor  
IL  
2, 5, 6  
5, 6, 7  
1.1  
24,700  
4,000  
30  
Q
Unloaded Q  
50 W Loaded Q  
Turnover Temperature  
Turnover Frequency  
U
Q
L
T
Temperature Stability  
15  
1.0  
2.8  
45  
°C  
kHz  
O
f
f
6, 7, 8  
O
C
2
Frequency Temperature Coefficient  
Absolute Value during the First Year  
FTC  
|fA|  
0.032  
10  
ppm/°C  
Frequency Aging  
DC Insulation Resistance between Any Two Terminals  
RF Equivalent RLC Model  
1
5
ppm/yr  
MW  
W
R
Motional Resistance  
Motional Inductance  
Motional Capacitance  
Transducer Static Capacitance  
19  
M
5, 6, 7,  
9
L
88.546  
0.3889  
3.1  
11.1086  
262  
µH  
fF  
pF  
nH  
M
C
M
C
5, 6, 9  
2, 7  
3.4  
O
L
Test Fixture Shunt Inductance  
Lid Symbolization  
TEST  
CAUTION: Electrostatic Sensitive Device. Observe precautions for handling.  
Notes:  
1.  
2.  
Frequency aging is the change in fC with time and is specified at +65°C or less.  
7.  
8.  
Derived mathematically from one or more of the following directly measured  
parameters: fC, IL, 3 dB bandwidth, fC versus TC, and CO.  
Turnover temperature, TO, is the temperature of maximum (or turnover) fre-  
Aging may exceed the specification for prolonged temperatures above +65°C.  
Typically, aging is greatest the first year after manufacture, decreasing in subse-  
quent years.  
quency, fO. The nominal frequency at any case temperature, TC, may be calcu-  
The center frequency, fC, is measured at the minimum insertion loss point,  
lated from: f = fO [1 - FTC (TO -TC)2]. Typically oscillator TO is approximately  
equal to the specified resonator TO.  
This equivalent RLC model approximates resonator performance near the reso-  
nant frequency and is provided for reference only. The capacitance CO is the  
static (nonmotional) capacitance between the two terminals measured at low  
frequency (10 MHz) with a capacitance meter. The measurement includes para-  
sitic capacitance with "NC” pads unconnected. Case parasitic capacitance is  
approximately 0.05 pF. Transducer parallel capacitance can by calculated as:  
ILMIN, with the resonator in the 50 W test system (VSWR £ 1.2:1). The shunt  
inductance, LTEST, is tuned for parallel resonance with CO at fC. Typically, fOS-  
CILLATOR or fTRANSMITTER is approximately equal to the resonator fC.  
One or more of the following United States patents apply: 4,454,488 and  
4,616,197.  
Typically, equipment utilizing this device requires emissions testing and govern-  
ment approval, which is the responsibility of the equipment manufacturer.  
Unless noted otherwise, case temperature TC = +25°C±2°C.  
The design, manufacturing process, and specifications of this device are subject  
to change without notice.  
9.  
3.  
4.  
5.  
6.  
C
P » CO - 0.05 pF.  
RF Monolithics, Inc.  
RFM Europe  
Phone: (972) 233-2903  
Phone: 44 1963 251383  
Fax: (972) 387-8148  
Fax: 44 1963 251510  
E-mail: info@rfm.com  
http://www.rfm.com  
RO2166A-050901  
Page 1 of 2  
©1999 by RF Monolithics, Inc. The stylized RFM logo are registered trademarks of RF Monolithics, Inc.  
857.65 MHz  
SAW Resonator  
Electrical Connections  
Equivalent LC Model  
Terminal  
The SAW resonator is bidirectional and may be in-  
stalled with either orientation. The two terminals  
are interchangeable and unnumbered. The callout  
NC indicates no internal connection. The NC pads  
assist with mechanical positioning and stability.  
External grounding of the NC pads is recommend-  
ed to help reduce parasitic capacitance in the cir-  
cuit.  
0.05 pF*  
NC  
NC  
+
C
=
C
o
0.05 pF  
p
C
p
*Case Parasitics  
Terminal  
Lm  
Cm  
Rm  
Temperature Characteristics  
The curve shown on the right  
fC = fO , T C = TO  
0
0
Typical Test Circuit  
accounts for resonator contri-  
-50  
bution only and does not in-  
-100  
-50  
The test circuit inductor, L  
, is tuned to resonate with the static capaci-  
TEST  
-100  
-150  
-200  
tance, C , at F .  
O
C
clude LC component tempera-  
-150  
ture contributions.  
-200  
-80 -60 -40 -20  
0
+20 +40 +60 +80  
ELECTRICAL TEST  
Typical Circuit Board  
Land Pattern  
The circuit board land pattern shown below is one possible design. The op-  
timum land pattern is dependent on the circuit board assembly process  
which varies by manufacturer. The distance between adjacent land edges  
should be at a maximum to minimize parasitic capacitance. Trace lengths  
from terminal lands to other components should be short and wide to mini-  
mize parasitic series inductances.  
T = TC - TO ( °C )  
D
W
W
From 50  
To 50  
Network Analyzer  
Network Analyzer  
(4 Places)  
Typical Dimension:  
0.010 to 0.047 inch  
(0.25 to 1.20 mm)  
Case Design  
The case material is black alumina with contrasting symbolization. All pads  
are nominally centered with respect to the base and consist of 40 to  
70 microinches electroless gold on 60-350 micorinches electroless nickel.  
Typical Application Circuits  
Typical Low-Power Transmitter Application  
+9VDC  
47  
200k  
W
Modulation  
Input  
C1  
L1  
(Antenna)  
C2  
ROXXXXA  
Bottom View  
Millimeters  
Inches  
RF Bypass  
Dimensions  
Min  
Max  
Min  
Max  
470  
A
B
C
D
E
F
5.74  
3.73  
1.91  
0.94  
0.83  
1.16  
0.94  
0.43  
0.43  
5.08  
0.38  
3.05  
5.99  
3.99  
2.16  
1.10  
1.20  
1.53  
1.10  
0.59  
0.59  
5.33  
0.64  
3.30  
0.226  
0.147  
0.075  
0.037  
0.033  
0.046  
0.037  
0.017  
0.017  
0.200  
0.015  
0.120  
0.236  
0.157  
0.085  
0.043  
0.047  
0.060  
0.043  
0.023  
0.023  
0.210  
0.025  
0.130  
Typical Local Oscillator Application  
Output  
+VDC  
+VDC  
C1  
G
H
K
M
N
P
L1  
C2  
ROXXXXA  
Bottom View  
RF Bypass  
RF Monolithics, Inc.  
RFM Europe  
Phone: (972) 233-2903  
Phone: 44 1963 251383  
Fax: (972) 387-8148  
Fax: 44 1963 251510  
E-mail: info@rfm.com  
http://www.rfm.com  
RO2166A-050901  
Page 2 of 2  
©1999 by RF Monolithics, Inc. The stylized RFM logo are registered trademarks of RF Monolithics, Inc.  

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